 85bf1341f3
			
		
	
	85bf1341f3
	
	
	
		
			
			Frontend Enhancements: - Complete React TypeScript frontend with modern UI components - Distributed workflows management interface with real-time updates - Socket.IO integration for live agent status monitoring - Agent management dashboard with cluster visualization - Project management interface with metrics and task tracking - Responsive design with proper error handling and loading states Backend Infrastructure: - Distributed coordinator for multi-agent workflow orchestration - Cluster management API with comprehensive agent operations - Enhanced database models for agents and projects - Project service for filesystem-based project discovery - Performance monitoring and metrics collection - Comprehensive API documentation and error handling Documentation: - Complete distributed development guide (README_DISTRIBUTED.md) - Comprehensive development report with architecture insights - System configuration templates and deployment guides The platform now provides a complete web interface for managing the distributed AI cluster with real-time monitoring, workflow orchestration, and agent coordination capabilities. 🤖 Generated with [Claude Code](https://claude.ai/code) Co-Authored-By: Claude <noreply@anthropic.com>
		
			
				
	
	
		
			208 lines
		
	
	
		
			9.4 KiB
		
	
	
	
		
			JavaScript
		
	
	
	
	
	
			
		
		
	
	
			208 lines
		
	
	
		
			9.4 KiB
		
	
	
	
		
			JavaScript
		
	
	
	
	
	
| function _typeof(o) { "@babel/helpers - typeof"; return _typeof = "function" == typeof Symbol && "symbol" == typeof Symbol.iterator ? function (o) { return typeof o; } : function (o) { return o && "function" == typeof Symbol && o.constructor === Symbol && o !== Symbol.prototype ? "symbol" : typeof o; }, _typeof(o); }
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| function ownKeys(e, r) { var t = Object.keys(e); if (Object.getOwnPropertySymbols) { var o = Object.getOwnPropertySymbols(e); r && (o = o.filter(function (r) { return Object.getOwnPropertyDescriptor(e, r).enumerable; })), t.push.apply(t, o); } return t; }
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| function _objectSpread(e) { for (var r = 1; r < arguments.length; r++) { var t = null != arguments[r] ? arguments[r] : {}; r % 2 ? ownKeys(Object(t), !0).forEach(function (r) { _defineProperty(e, r, t[r]); }) : Object.getOwnPropertyDescriptors ? Object.defineProperties(e, Object.getOwnPropertyDescriptors(t)) : ownKeys(Object(t)).forEach(function (r) { Object.defineProperty(e, r, Object.getOwnPropertyDescriptor(t, r)); }); } return e; }
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| function _defineProperty(obj, key, value) { key = _toPropertyKey(key); if (key in obj) { Object.defineProperty(obj, key, { value: value, enumerable: true, configurable: true, writable: true }); } else { obj[key] = value; } return obj; }
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| function _toPropertyKey(t) { var i = _toPrimitive(t, "string"); return "symbol" == _typeof(i) ? i : i + ""; }
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| function _toPrimitive(t, r) { if ("object" != _typeof(t) || !t) return t; var e = t[Symbol.toPrimitive]; if (void 0 !== e) { var i = e.call(t, r || "default"); if ("object" != _typeof(i)) return i; throw new TypeError("@@toPrimitive must return a primitive value."); } return ("string" === r ? String : Number)(t); }
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| function _slicedToArray(arr, i) { return _arrayWithHoles(arr) || _iterableToArrayLimit(arr, i) || _unsupportedIterableToArray(arr, i) || _nonIterableRest(); }
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| function _nonIterableRest() { throw new TypeError("Invalid attempt to destructure non-iterable instance.\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method."); }
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| function _unsupportedIterableToArray(o, minLen) { if (!o) return; if (typeof o === "string") return _arrayLikeToArray(o, minLen); var n = Object.prototype.toString.call(o).slice(8, -1); if (n === "Object" && o.constructor) n = o.constructor.name; if (n === "Map" || n === "Set") return Array.from(o); if (n === "Arguments" || /^(?:Ui|I)nt(?:8|16|32)(?:Clamped)?Array$/.test(n)) return _arrayLikeToArray(o, minLen); }
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| function _arrayLikeToArray(arr, len) { if (len == null || len > arr.length) len = arr.length; for (var i = 0, arr2 = new Array(len); i < len; i++) arr2[i] = arr[i]; return arr2; }
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| function _iterableToArrayLimit(r, l) { var t = null == r ? null : "undefined" != typeof Symbol && r[Symbol.iterator] || r["@@iterator"]; if (null != t) { var e, n, i, u, a = [], f = !0, o = !1; try { if (i = (t = t.call(r)).next, 0 === l) { if (Object(t) !== t) return; f = !1; } else for (; !(f = (e = i.call(t)).done) && (a.push(e.value), a.length !== l); f = !0); } catch (r) { o = !0, n = r; } finally { try { if (!f && null != t["return"] && (u = t["return"](), Object(u) !== u)) return; } finally { if (o) throw n; } } return a; } }
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| function _arrayWithHoles(arr) { if (Array.isArray(arr)) return arr; }
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| import isNil from 'lodash/isNil';
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| import { isValidElement } from 'react';
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| import isFunction from 'lodash/isFunction';
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| import { getPercentValue } from './DataUtils';
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| import { parseScale, checkDomainOfScale, getTicksOfScale } from './ChartUtils';
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| export var RADIAN = Math.PI / 180;
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| export var degreeToRadian = function degreeToRadian(angle) {
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|   return angle * Math.PI / 180;
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| };
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| export var radianToDegree = function radianToDegree(angleInRadian) {
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|   return angleInRadian * 180 / Math.PI;
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| };
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| export var polarToCartesian = function polarToCartesian(cx, cy, radius, angle) {
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|   return {
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|     x: cx + Math.cos(-RADIAN * angle) * radius,
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|     y: cy + Math.sin(-RADIAN * angle) * radius
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|   };
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| };
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| export var getMaxRadius = function getMaxRadius(width, height) {
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|   var offset = arguments.length > 2 && arguments[2] !== undefined ? arguments[2] : {
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|     top: 0,
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|     right: 0,
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|     bottom: 0,
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|     left: 0
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|   };
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|   return Math.min(Math.abs(width - (offset.left || 0) - (offset.right || 0)), Math.abs(height - (offset.top || 0) - (offset.bottom || 0))) / 2;
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| };
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| 
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| /**
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|  * Calculate the scale function, position, width, height of axes
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|  * @param  {Object} props     Latest props
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|  * @param  {Object} axisMap   The configuration of axes
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|  * @param  {Object} offset    The offset of main part in the svg element
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|  * @param  {Object} axisType  The type of axes, radius-axis or angle-axis
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|  * @param  {String} chartName The name of chart
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|  * @return {Object} Configuration
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|  */
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| export var formatAxisMap = function formatAxisMap(props, axisMap, offset, axisType, chartName) {
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|   var width = props.width,
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|     height = props.height;
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|   var startAngle = props.startAngle,
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|     endAngle = props.endAngle;
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|   var cx = getPercentValue(props.cx, width, width / 2);
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|   var cy = getPercentValue(props.cy, height, height / 2);
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|   var maxRadius = getMaxRadius(width, height, offset);
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|   var innerRadius = getPercentValue(props.innerRadius, maxRadius, 0);
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|   var outerRadius = getPercentValue(props.outerRadius, maxRadius, maxRadius * 0.8);
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|   var ids = Object.keys(axisMap);
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|   return ids.reduce(function (result, id) {
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|     var axis = axisMap[id];
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|     var domain = axis.domain,
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|       reversed = axis.reversed;
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|     var range;
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|     if (isNil(axis.range)) {
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|       if (axisType === 'angleAxis') {
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|         range = [startAngle, endAngle];
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|       } else if (axisType === 'radiusAxis') {
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|         range = [innerRadius, outerRadius];
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|       }
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|       if (reversed) {
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|         range = [range[1], range[0]];
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|       }
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|     } else {
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|       range = axis.range;
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|       var _range = range;
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|       var _range2 = _slicedToArray(_range, 2);
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|       startAngle = _range2[0];
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|       endAngle = _range2[1];
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|     }
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|     var _parseScale = parseScale(axis, chartName),
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|       realScaleType = _parseScale.realScaleType,
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|       scale = _parseScale.scale;
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|     scale.domain(domain).range(range);
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|     checkDomainOfScale(scale);
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|     var ticks = getTicksOfScale(scale, _objectSpread(_objectSpread({}, axis), {}, {
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|       realScaleType: realScaleType
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|     }));
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|     var finalAxis = _objectSpread(_objectSpread(_objectSpread({}, axis), ticks), {}, {
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|       range: range,
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|       radius: outerRadius,
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|       realScaleType: realScaleType,
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|       scale: scale,
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|       cx: cx,
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|       cy: cy,
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|       innerRadius: innerRadius,
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|       outerRadius: outerRadius,
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|       startAngle: startAngle,
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|       endAngle: endAngle
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|     });
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|     return _objectSpread(_objectSpread({}, result), {}, _defineProperty({}, id, finalAxis));
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|   }, {});
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| };
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| export var distanceBetweenPoints = function distanceBetweenPoints(point, anotherPoint) {
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|   var x1 = point.x,
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|     y1 = point.y;
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|   var x2 = anotherPoint.x,
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|     y2 = anotherPoint.y;
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|   return Math.sqrt(Math.pow(x1 - x2, 2) + Math.pow(y1 - y2, 2));
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| };
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| export var getAngleOfPoint = function getAngleOfPoint(_ref, _ref2) {
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|   var x = _ref.x,
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|     y = _ref.y;
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|   var cx = _ref2.cx,
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|     cy = _ref2.cy;
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|   var radius = distanceBetweenPoints({
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|     x: x,
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|     y: y
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|   }, {
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|     x: cx,
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|     y: cy
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|   });
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|   if (radius <= 0) {
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|     return {
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|       radius: radius
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|     };
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|   }
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|   var cos = (x - cx) / radius;
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|   var angleInRadian = Math.acos(cos);
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|   if (y > cy) {
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|     angleInRadian = 2 * Math.PI - angleInRadian;
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|   }
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|   return {
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|     radius: radius,
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|     angle: radianToDegree(angleInRadian),
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|     angleInRadian: angleInRadian
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|   };
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| };
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| export var formatAngleOfSector = function formatAngleOfSector(_ref3) {
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|   var startAngle = _ref3.startAngle,
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|     endAngle = _ref3.endAngle;
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|   var startCnt = Math.floor(startAngle / 360);
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|   var endCnt = Math.floor(endAngle / 360);
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|   var min = Math.min(startCnt, endCnt);
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|   return {
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|     startAngle: startAngle - min * 360,
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|     endAngle: endAngle - min * 360
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|   };
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| };
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| var reverseFormatAngleOfSetor = function reverseFormatAngleOfSetor(angle, _ref4) {
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|   var startAngle = _ref4.startAngle,
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|     endAngle = _ref4.endAngle;
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|   var startCnt = Math.floor(startAngle / 360);
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|   var endCnt = Math.floor(endAngle / 360);
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|   var min = Math.min(startCnt, endCnt);
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|   return angle + min * 360;
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| };
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| export var inRangeOfSector = function inRangeOfSector(_ref5, sector) {
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|   var x = _ref5.x,
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|     y = _ref5.y;
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|   var _getAngleOfPoint = getAngleOfPoint({
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|       x: x,
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|       y: y
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|     }, sector),
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|     radius = _getAngleOfPoint.radius,
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|     angle = _getAngleOfPoint.angle;
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|   var innerRadius = sector.innerRadius,
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|     outerRadius = sector.outerRadius;
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|   if (radius < innerRadius || radius > outerRadius) {
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|     return false;
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|   }
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|   if (radius === 0) {
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|     return true;
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|   }
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|   var _formatAngleOfSector = formatAngleOfSector(sector),
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|     startAngle = _formatAngleOfSector.startAngle,
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|     endAngle = _formatAngleOfSector.endAngle;
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|   var formatAngle = angle;
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|   var inRange;
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|   if (startAngle <= endAngle) {
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|     while (formatAngle > endAngle) {
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|       formatAngle -= 360;
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|     }
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|     while (formatAngle < startAngle) {
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|       formatAngle += 360;
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|     }
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|     inRange = formatAngle >= startAngle && formatAngle <= endAngle;
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|   } else {
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|     while (formatAngle > startAngle) {
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|       formatAngle -= 360;
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|     }
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|     while (formatAngle < endAngle) {
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|       formatAngle += 360;
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|     }
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|     inRange = formatAngle >= endAngle && formatAngle <= startAngle;
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|   }
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|   if (inRange) {
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|     return _objectSpread(_objectSpread({}, sector), {}, {
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|       radius: radius,
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|       angle: reverseFormatAngleOfSetor(formatAngle, sector)
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|     });
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|   }
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|   return null;
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| };
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| export var getTickClassName = function getTickClassName(tick) {
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|   return ! /*#__PURE__*/isValidElement(tick) && !isFunction(tick) && typeof tick !== 'boolean' ? tick.className : '';
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| }; |